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Systematic study of thiazole incorporated NLO gradient bridge chromophores.

机译:噻唑结合NLO梯度桥发色团的系统研究。

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摘要

In an exploration of improving the intrinsic first order hyperpolarizability of organic NLO chromophores, sets of novel chromophores were synthesized. These compounds were designed according to a novel gradient bridge concept. Among these novel compounds, the first experimental example of a thiazole "forward" containing chromophore was synthesized. The first order hyperpolarizabilities of these compounds were examined using hyper-Raleigh scattering (HRS) technique. Results obtained at 1.3mum and 880nm revealed that the regiochemical orientation of the thiazole has a marked effect on the hyperpolarizability. Thiazole "forward" showed a 20% improvement in hyperpolarizability relative to chloroform compared to that of thiazole "backward." An additional examination of two of these compounds with respect to their bulk nonlinear optical activity showed that the novel thiazole "forward" containing chromophore possessed an inherit instability in its structure compared to that of its thiophene analogue. The degradation of the thiazole "forward" chromophore occurred through a [4+2] cycloaddition reaction with DMSO. Recommendations to improve the stability of future thiazole "forward" chromophores were discussed. Overall, the first order hyperpolarizability of thiazole containing chromophores can be tailored, but are not stronger than their thiophene analogue.
机译:在改善有机NLO生色团的固有一阶超极化能力的探索中,合成了新型生色团。这些化合物是根据新颖的梯度桥概念设计的。在这些新型化合物中,合成了噻唑“正向”发色团的第一个实验例。使用高罗利散射(HRS)技术检查了这些化合物的一阶超极化性。在1.3μm和880nm处获得的结果表明,噻唑的区域化学取向对超极化性具有显着影响。与噻唑“向后”相比,噻唑“向前”显示出相对于氯仿的超极化能力提高了20%。对其中两种化合物的整体非线性光学活性进行了进一步检查,结果表明,与噻吩类似物相比,新型噻唑“正向”发色团在结构上具有遗传不稳定性。噻唑“正向”发色团的降解是通过与DMSO的[4 + 2]环加成反应发生的。讨论了改善未来噻唑“正向”生色团稳定性的建议。总的来说,可以定制含噻唑的生色团的一阶超极化能力,但并不比噻吩类似物强。

著录项

  • 作者

    Casmier, Daniel Michael.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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